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Crystallization Kinetics and Magnetic Properties of Fe73.5Si13.5B9Cu1Nb1V2 Nanocrystalline Powder Cores

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【作者】 汪汝武刘静WANG ZhenGAN ZhanghuaXIANG ZhidongLI Yunbao

【Author】 WANG Ruwu;LIU Jing;WANG Zhen;GAN Zhanghua;XIANG Zhidong;LI Yunbao;College of Materials Science and Metallurgical Engineering,Wuhan University of Science and Technology;Hubei Province Key Laboratory of Systems Science in Metallurgical Process;State Key Laboratory for Advanced Metals and Materials;

【机构】 College of Materials Science and Metallurgical Engineering,Wuhan University of Science and TechnologyHubei Province Key Laboratory of Systems Science in Metallurgical ProcessState Key Laboratory for Advanced Metals and Materials

【摘要】 Amorphous ribbons of the alloy Fe73.5Si13.5B9Cu1Nb1V2 were prepared by the standard single copper wheel melt spinning technique in the air atmosphere.The crystallization kinetics of amorphous ribbons was analyzed by non-isothermal differential scanning calorimetry(DSC) measurements.The crystallization activation energies of amorphous ribbons calculated by using Kissinger model were 364 and 337 kJ/mol for the first and the second crystallization,respectively.The Avrami exponent n was calculated from the Johnson- Mehl-Avrami(JMA) equation.The value of the Avrami exponent showed that the crystallization mechanism in the non-isothermal primary crystallization of amorphous ribbons was all shapes growing from small dimensions controlled by diffusion at decreasing nucleation rate.The variation of soft magnetic properties of nanocrystalline Fe73.5Si13.5B9Cu1Nb1V2 alloy powder cores as a function of milling times has been investigated.It is found that the effective permeability of the cores shows high frequency stability and decreases with the increase of milling times.The quality factor increases with increasing frequency in lower frequency range,and reaches a maximum at the frequency of 80 kHz then decreases gradually with increasing frequency.

【Abstract】 Amorphous ribbons of the alloy Fe73.5Si13.5B9Cu1Nb1V2 were prepared by the standard single copper wheel melt spinning technique in the air atmosphere.The crystallization kinetics of amorphous ribbons was analyzed by non-isothermal differential scanning calorimetry(DSC) measurements.The crystallization activation energies of amorphous ribbons calculated by using Kissinger model were 364 and 337 kJ/mol for the first and the second crystallization,respectively.The Avrami exponent n was calculated from the Johnson– Mehl–Avrami(JMA) equation.The value of the Avrami exponent showed that the crystallization mechanism in the non-isothermal primary crystallization of amorphous ribbons was all shapes growing from small dimensions controlled by diffusion at decreasing nucleation rate.The variation of soft magnetic properties of nanocrystalline Fe73.5Si13.5B9Cu1Nb1V2 alloy powder cores as a function of milling times has been investigated.It is found that the effective permeability of the cores shows high frequency stability and decreases with the increase of milling times.The quality factor increases with increasing frequency in lower frequency range,and reaches a maximum at the frequency of 80 kHz then decreases gradually with increasing frequency.

【关键词】 finemetcrystallization kineticspowder core
【Key words】 finemetcrystallization kineticspowder core
【基金】 Funded by the State Key Lab of Advanced Metals and Materials(No.2011-ZD03);The Hubei Provincial Department of Education(No.D20111103)
  • 【文献出处】 Journal of Wuhan University of Technology(Materials Science Edition) ,武汉理工大学学报(材料科学版)(英文版) , 编辑部邮箱 ,2013年05期
  • 【分类号】O611.4
  • 【被引频次】2
  • 【下载频次】50
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